DocumentCode :
780928
Title :
Space-time overlays for convolutionally coded systems
Author :
El Gamal, Hesham ; Hammons, A. Roger, Jr. ; Stefanov, Andrej
Author_Institution :
Dept. of Electr. Eng., Ohio State Univ., Columbus, OH, USA
Volume :
51
Issue :
9
fYear :
2003
Firstpage :
1603
Lastpage :
1612
Abstract :
We consider the design of space-time overlays to upgrade single-antenna wireless communication systems to accommodate multiple transmit antennas efficiently. We define the overlay constraint such that the signal transmitted from the first antenna in the upgraded system is the same as that in the single-antenna system. The signals transmitted from the remaining antennas are designed according to space-time coding principles to achieve full spatial diversity in quasi-static flat fading channels. For both binary phase-shift keying (BPSK) and quaternary phase-shift keying modulation systems, we develop an algebraic design framework that exploits the structure of existing single-dimensional convolutional codes in designing overlays that achieve full spatial diversity with minimum additional decoding complexity at the receiver. We also investigate a concatenated coding approach for a BPSK overlay design in which the inner code is an orthogonal block code. This approach is shown to yield near optimal asymptotic performance for quasi-static fading channels. We conclude by offering a brief discussion outlining the extension of the proposed techniques to time-varying block fading channels.
Keywords :
MIMO systems; block codes; channel coding; computational complexity; convolutional codes; diversity reception; fading channels; phase shift keying; space-time codes; time-varying channels; transmitting antennas; BPSK; MIMO; QPSK; algebraic design framework; binary phase-shift keying; channel coding; concatenated codes; convolutional codes; decoding complexity; flat fading channels; multiple transmit antennas; orthogonal block code; quasi-static fading channels; quaternary phase-shift keying; space-time coding; space-time overlays; spatial diversity; time-varying block fading channels; time-varying fading channels; Binary phase shift keying; Convolution; Convolutional codes; Fading; Modulation coding; Phase modulation; Phase shift keying; Signal design; Transmitting antennas; Wireless communication;
fLanguage :
English
Journal_Title :
Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
0090-6778
Type :
jour
DOI :
10.1109/TCOMM.2003.815082
Filename :
1231658
Link To Document :
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